We study the global dynamics of a time delayed epidemic model proposed by Liu et al. (2008) [J. Liu, J. Wu, Y. Zhou, Modeling disease spread via transport-related infection by a delay differential equation, Rocky Mountain J. Math. 38 (5) (2008) 15251540] describing disease transmission dynamics among two regions due to transport-related infection. We prove that if an endemic equilibrium exists then it is globally asymptotically stable for any length of time delay by constructing a Lyapunov functional. This suggests that the endemic steady state for both regions is globally asymptotically stable regardless of the length of the travel time when the disease is transferred between two regions by human transport. © 2011 Elsevier Ltd. All rights ...
We study the global dynamics of delayed pathogen infection models with immune impairment. Both patho...
In this paper, we study the global dynamics of a delayed SIRS epidemic model for transmission of dis...
In this paper, we investigate global dynamics for a system of delay differential equations which des...
summary:We describe the global dynamics of a disease transmission model between two regions which ar...
We study the global dynamics of a time delayed epidemic model proposed by Liu et al. (2008) [J. Liu,...
AbstractTo understand the effect of transport-related infection on disease spread, an epidemic model...
We begin with a detailed study of a delayed SI model of disease transmission with immigration into ...
In this paper, we establish the global asymptotic stability of an endemic equilibrium for an SIRS ep...
We study the global dynamics of a reaction-diffusion SEIR infection model with distributed delay and...
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
A two-city SIR epidemic model with transport-related infections is proposed. Some good analytical re...
An epidemic model with distributed time delay is derived to describe the dynamics of in-fectious dis...
We present a compartmental SIR (susceptible–infected–recovered) model to describe the propagation of...
Abstract. In this paper, an SIR epidemic model for the spread of an in-fectious disease transmitted ...
In this paper, we establish the global asymptotic stability of equi-libria for an SIR model of infec...
We study the global dynamics of delayed pathogen infection models with immune impairment. Both patho...
In this paper, we study the global dynamics of a delayed SIRS epidemic model for transmission of dis...
In this paper, we investigate global dynamics for a system of delay differential equations which des...
summary:We describe the global dynamics of a disease transmission model between two regions which ar...
We study the global dynamics of a time delayed epidemic model proposed by Liu et al. (2008) [J. Liu,...
AbstractTo understand the effect of transport-related infection on disease spread, an epidemic model...
We begin with a detailed study of a delayed SI model of disease transmission with immigration into ...
In this paper, we establish the global asymptotic stability of an endemic equilibrium for an SIRS ep...
We study the global dynamics of a reaction-diffusion SEIR infection model with distributed delay and...
An epidemic model with distributed time delay is derived to describe the dynamics of infectious dise...
A two-city SIR epidemic model with transport-related infections is proposed. Some good analytical re...
An epidemic model with distributed time delay is derived to describe the dynamics of in-fectious dis...
We present a compartmental SIR (susceptible–infected–recovered) model to describe the propagation of...
Abstract. In this paper, an SIR epidemic model for the spread of an in-fectious disease transmitted ...
In this paper, we establish the global asymptotic stability of equi-libria for an SIR model of infec...
We study the global dynamics of delayed pathogen infection models with immune impairment. Both patho...
In this paper, we study the global dynamics of a delayed SIRS epidemic model for transmission of dis...
In this paper, we investigate global dynamics for a system of delay differential equations which des...